Time-Resolved High-Spatial-Resolution Measurements of Underwater Laser Ionization and Filamentation

POSTER

Abstract

Laser triggering and guiding of underwater electrical discharges are being investigated and developed at NRL for applications including advanced micromachining and low-frequency laser acoustic generation. As part of this development we recently made several high-spatial-resolution, time-resolved measurements of underwater optical filamentation and laser ionization. Using 2-laser pump-probe backlit imaging techniques, we were able to achieve time resolution as short as 35 fs and spatial resolution down to 1 micron. Shadowgraph images show few-micron diameter gas bubbles forming throughout the pump beam path in ps timescales. Microbubble numbers and density increased with pulse energy and time during the pump pulse. We also obtained time-resolved spectra of ns-laser-ionized water, revealing black-body radiation lasting more than 100 ns after the ionizing pulse. Results from ongoing underwater laser ionization, filamentation, and discharge-guiding experiments will be presented.

Authors

  • T.G. Jones

    Plasma Physics Div., Naval Research Laboratory

  • Dmitri Kaganovich

    Plasma Physics Div., Naval Research Laboratory, Naval Research Laboratory, U.S. Naval Research Laboratory

  • Michael Helle

    Plasma Physics Div., Naval Research Laboratory, Naval Research Laboratory, U.S. Naval Research Laboratory

  • Joseph R. Penano

    Plasma Physics Div., Naval Research Laboratory, Naval Research Laboratory, Plasma Physics Division, Naval Research Laboratory

  • Antonio Ting

    Plasma Physics Div., Naval Research Laboratory, U.S. Naval Research Laboratory, Plasma Physics Division, Naval Research Laboratory

  • Daniel F. Gordon

    Plasma Physics Div., Naval Research Laboratory, Naval Research Laboratory, Naval Research Laboratory, Washington DC, U.S. Naval Research Laboratory, Plasma Physics Division, Naval Research Laboratory